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Development of high-sensitivity ion trap ion mobility spectrometry time-of-flight techniques: a high-throughput nano-LC-IMS-TOF separation of peptides arising from a Drosophila protein extract. | LitMetric

AI Article Synopsis

  • A new linear octopole trap interface enhances an ion mobility time-of-flight mass spectrometer, significantly improving ion accumulation and focusing.
  • The interface boosts experimental efficiency by about 50-200 times compared to previous three-dimensional trap designs.
  • This advancement allows for rapid recording of drift time distributions in complex mixtures and demonstrates its application in proteomics through the separation of peptides from the Drosophila proteome.

Article Abstract

A linear octopole trap interface for an ion mobility time-of-flight mass spectrometer has been developed for focusing and accumulating continuous beams of ions produced by electrospray ionization. The interface improves experimental efficiencies by factors of approximately 50-200 compared with an analogous configuration that utilizes a three-dimensional Paul geometry trap (Hoaglund-Hyzer, C. S.; Lee, Y. J.; Counterman, A. E.; Clemmer, D. E. Anal. Chem. 2002, 74, 992-1006). With these improvements, it is possible to record nested drift (flight) time distributions for complex mixtures in fractions of a second. We demonstrate the approach for several well-defined peptide mixtures and an assessment of the detection limits is given. Additionally, we demonstrate the utility of the approach in the field of proteomics by an on-line, three-dimensional nano-LC-ion mobility-TOF separation of tryptic peptides from the Drosophila proteome.

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Source
http://dx.doi.org/10.1021/ac030107fDOI Listing

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